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糖码是什么?

What is the Sugar Code?

机构信息

Institute of Physiological Chemistry, Faculty of Veterinary Medicine, Ludwig-Maximilians-University Munich, Veterinärstr. 13, 80539, Munich, Germany.

Department of Chemistry and Biochemistry, Charles E. Schmidt College of Science, Florida Atlantic University, 777 Glades Road, Boca Raton, Florida, 33431, USA.

出版信息

Chembiochem. 2022 Jul 5;23(13):e202100327. doi: 10.1002/cbic.202100327. Epub 2021 Sep 22.

Abstract

A code is defined by the nature of the symbols, which are used to generate information-storing combinations (e. g. oligo- and polymers). Like nucleic acids and proteins, oligo- and polysaccharides are ubiquitous, and they are a biochemical platform for establishing molecular messages. Of note, the letters of the sugar code system (third alphabet of life) excel in coding capacity by making an unsurpassed versatility for isomer (code word) formation possible by variability in anomery and linkage position of the glycosidic bond, ring size and branching. The enzymatic machinery for glycan biosynthesis (writers) realizes this enormous potential for building a large vocabulary. It includes possibilities for dynamic editing/erasing as known from nucleic acids and proteins. Matching the glycome diversity, a large panel of sugar receptors (lectins) has developed based on more than a dozen folds. Lectins 'read' the glycan-encoded information. Hydrogen/coordination bonding and ionic pairing together with stacking and C-H/π-interactions as well as modes of spatial glycan presentation underlie the selectivity and specificity of glycan-lectin recognition. Modular design of lectins together with glycan display and the nature of the cognate glycoconjugate account for the large number of post-binding events. They give an entry to the glycan vocabulary its functional, often context-dependent meaning(s), hereby building the dictionary of the sugar code.

摘要

代码由符号的性质定义,这些符号用于生成信息存储组合(例如寡聚和聚合物)。与核酸和蛋白质一样,寡糖和多糖无处不在,它们是建立分子信息的生化平台。值得注意的是,糖码系统(生命的第三个字母)的字母通过在糖苷键的非对映和连接位置、环大小和分支的可变性方面使异构体(密码词)形成具有无与伦比的多功能性,从而在编码能力方面表现出色。聚糖生物合成的酶机制(书写器)实现了构建大词汇量的巨大潜力。它包括动态编辑/擦除的可能性,就像核酸和蛋白质一样。为了匹配聚糖多样性,已经开发了基于十多种折叠的大量糖受体(凝集素)。凝集素“读取”糖编码信息。氢键/配位键和离子配对以及堆积和 C-H/π 相互作用以及空间糖呈现模式是糖-凝集素识别的选择性和特异性的基础。凝集素的模块化设计以及糖的呈现和同源糖缀合物的性质解释了大量结合后的事件。它们为糖词汇赋予了其功能,通常是上下文相关的含义,从而构建了糖码字典。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52e0/9539975/5660a2d5e8aa/CBIC-23-0-g009.jpg

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